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CA2567480A1 - Multi-state alarm system for a medical pump - Google Patents

Multi-state alarm system for a medical pump
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Publication number
CA2567480A1
CA2567480A1CA002567480ACA2567480ACA2567480A1CA 2567480 A1CA2567480 A1CA 2567480A1CA 002567480 ACA002567480 ACA 002567480ACA 2567480 ACA2567480 ACA 2567480ACA 2567480 A1CA2567480 A1CA 2567480A1
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alarm
state
event
alarm system
alarm state
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CA002567480A
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CA2567480C (en
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Janice Stewart
Randolph Meinzer
Debra K. Bello
Janet Mullan
Lai H. Wong
Brett Todd
Todd Kivlehan
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Baxter International Inc
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Abstract

A method of notification via an alarm system (52, 352) associated at least one treatment parameter for delivering a therapeutic fluid (54) to a patient is described. The method comprising the steps of enabling first (208) and second (206) alarm states of the alarm system, the second alarm state discernable from the first alarm state. The first alarm state is activated upon occurrence of a first event and a snooze element (200) is enabled that when activated enables the second alarm state to be activated upon occurrence of a second event. The second alarm state is then activated upon occurrence of the second event.

Description

MULTI-STATE ALARM SYSTEM FOR A MEDICAL PUMP
DESCRIPTION
Technical Field The instant invention relates to alarm systems for use with medical delivery pumps for delivery of therapeutic fluids to a patient.

Cross Reference to Applications This application expressly incorporates by reference, and makes a part hereof, the following U.S. Patent and U.S. Patent Applications: U.S. Patent No. 5,782,805;
U.S. Patent No. 5,842,841; U.S. Patent Application identified as Attorney Docket No. EIS-6089 (1417G P
933); U.S. Patent Application identified as Attomey Docket No. EIS-6090 (1417G
P 934);
and U.S. Patent Application identified as Attorney Docket No. EIS-6091 (1417G
P 935).
Background of the Invention The administration of therapeutic fluids to a patient is well known in the art. Many types of medical delivery devices exist to deliver various therapeutic fluids to a patient, such as, for example, parenteral fluids, drugs or other medicaments, electrolytes, blood and blood products, and the like. One particular type of medical delivery device is an infusion pump, which can deliver one or more of these therapeutic fluids to a patient via a variety of administration types, such as, for example, intravenous (IV), intra-arterial (IA), subcutaneous, epidural, irrigation of fluid spaces applications, and the like. Many infusion pumps that operate under these types of administration typically utilize an administration line set and an associated container containing one or more therapeutic fluids. The line set is typically loaded into a delivery mechanism of the pump, which facilitates delivery of the fluid to the patient.

Each type of administration and each type of therapeutic fluid typically involve numerous operational parameters, variables, constraints and other related information, such as medical and pharmaceutical related information, that must be monitored and followed to ensure proper, effective and safe delivery of therapeutic fluids to the patient and effective treatment of the patient. To ensure proper monitoring and treatment, most medical delivery pumps incorporate an alarm system to indicate to a caregiver or patient that an event has occurred, such as one or more operational parameters being out of a predetermined range.
These alarms are typically visual or audible alarms, such as a beeping alarm.
In addition to medical delivery devices, most medical equipment that is utilized in direct patient care typically have alarm systems to notify the caregiver of situations that require attention. While the intent of these alarms is to notify the caregiver of such situations and allow them to be addressed, the shear number of alarm systems of equipment that may be associated with treatment of a particular patient, and the frequency of such alarms being triggered and high levels of patient acuity, have ultimately minimized the sense of urgency in responding to such alarms. This can result in a potentially dangerous situation, particularly in the case of medical pumps utilized to properly and safely deliver fluids, such as drugs, to a patient.
To address this concern, there is a need to distinguish between alarms, and in the case of medical pumps, there is a need to distinguish between alarms associated with the same or separate events that occur in connection with the same or separate devices.
The present invention addresses these and other concerns and generally provides a new and improved alarm system for a medical pump for delivery of medicaments to a patient.
Summary of the Invention The present invention generally provides an alarm system for a medical pump associated with delivering a medicament or fluid to a patient in connection with treatment of the patient. According to a particular aspect of the invention, the alarm system comprises an alarm associated with at least one treatment parameter. The alarm includes a first alarm state associated with a first event relating to the at least one treatment parameter and a second alarm state associated with a second event. The second alarm state is discernable from the first alarm state. This will allow each of the events to be treated differently by a caregiver.
According to other aspects of the invention, the alarm may be audible, the alarm may be visual, the alarm may have both audible and visual components, the second alarm state may have a volume level that is discernable from the first alarm state, the second alarm state may have a tone that is discemable from the first alarm state, the second alarm state may have a frequency that is discemable the first alarm state, and/or the second alann state may have an appearance that is discernable from the first alarm state.
According to another aspect of the invention, the second event relates to the at least one treatment parameter.
According to yet another aspect of the invention, the second event relates to a treatment parameter different from the at least one treatment parameter.
According to yet another aspect of the invention, the second event is defined by expiration of an amount of time measured from occurrence of the first event.
According to yet another aspect of the invention, the second event is defined by a deviation from a value associated with the at least one treatment parameter.
According to yet another aspect of the invention, the at least one treatment parameter is associated with the pump.
According to yet another aspect of the invention, the at least one treatment parameter is associated with a source external to the pump.
According to yet another aspect of the invention, an alarm signal associated with the alarm states is routed to a device external to the pump.
According to a further aspect of the invention, the treatment parameter may be associated with a measurement from the patient, operation of the pump, and/or the fluid.
According to yet another aspect of the invention, the second event may be associated with a life-threatening situation for the patient.
According to yet another aspect of the invention, the pump will shut off when the alarm is in the second alarm state.
According to yet another aspect of the invention, the events can be set by a user.
According to yet another aspect of the invention, the second alarm state will only be operational with a particular fluid. The identification of the particular fluid may be stored in a memory associated with the pump.
According to yet another aspect of the invention, the alarm system can be customizable and include a near-end alert/alann feature.
According to yet another aspect of the invention, the alarm system can be incorporated into different types of infusion pumps in including a micro electro-mechanical systems (MEMS) pump.
These and other aspects of the present invention will be apparent from the drawings and written specification set forth herein, including the appended claims.

Brief Description of the Drawings FIG. 1 is a schematic diagram generically depicting an infusion pump having an alarm system in accordance with the principles of the present invention.
FIG. 2 is a schematic diagram depicting an infusion pump having an alarm system that includes an audible component in accordance with the principles of the present invention.
FIG. 3 is a screen shot of a display of the infusion pump depicted in FIG. 3, which illustrates an exemplary visual first alarm state of the alarm system.
FIG. 4 is a screen shot of a display of the infusion pump depicted in FIG. 3, which illustrates an exemplary visual second alarm state of the alarm system.
FIG. 5 is a schematic diagram generically depicting an infusion pump having an alarm system in communication with at least one external device in accordance with the principles of the present invention.
FIG. 6 is a schematic diagram of an alternate embodiment of the alarm system of the present invention incorporating a near-end alert/alarm feature or snooze feature.
FIG. 7 is a schematic diagram of an example of a particular embodiment and application of the alarm system of the present invention.
FIG. 8 is a schematic diagram of an alternative embodiment of the alarm system of the present invention.

Detailed Description of the Preferred Embodiments While this invention is susceptible to embodiments in many different forms, there are shown in the drawings and herein described in detail, preferred embodiments of the invention with the understanding that the present disclosures are to be considered as exemplifications of the principles of the invention and are not intended to limit the broad aspects of the invention to the embodiments illustrated.
FIG. I generically depicts a medical fluid delivery pump 50 having an alarm system 52 in accordance with the principles of the present invention. As is well known in the art, the pump 50 is utilized to deliver a medicament 54, or fluid 54, to a patient via a line set 56 and associated container 58 containing the fluid 54. The pump 50 is preferably a microprocessor-based pump that is capable of being programmed, utilizing software and/or firmware, to facilitate operation and functionality of the pump 50. One preferred embodiment of the pump 50 is the one disclosed in U.S. Patent Nos. 5,782,805 and 5,842,841, which are incorporated herein by reference.
5 In a preferred embodiment, the alarm system 52 comprises an alarm 60 having a first alarm state and associated alarm signal (indicated by the speaker icon labeled as "1" in FIG.
1) and a second alann state and associated alarm signal (indicated by the speaker icon labeled as "2" in FIG. 1). However, any number of alarm states and associated signals could be provided in accordance with the principles of the present invention. The alarm 60 of the alarm system 52 is preferably associated with at least one treatment parameter in connection with treatment of a patient. The treatment parameter may be associated with the pump 50, or it may be associated with an external source that is in communication with the pump alarm system 52. Examples of treatment parameters may include a value representing an infusion rate of a therapeutic fluid being delivered to a patient by a volumetric infusion pump, information relating to operation of the pump, the identification of a drug being delivered to a patient, a measurement taken from a patient by the pump or an external source, or any other information or data associated with the treatment of a patient. As used herein, the term "treatment parameter" is defined to encompass all of the above-described parameters as well as any other, types or forms of data, values, parameters, information, units of time, or any discrete measurement or piece of data in connection with treatment of a patient. The alarm 60 is customizable and also can be pre-programmed or set by a caregiver such as at the bedside.
According to a particul.ar aspect of the invention, the first alarm state is preferably associated with a first event relating to a treatment parameter, and the second alarm state is associated with a second event relating to the same or another treatment parameter. The second alarm state is discemable from the first alarm state so that a caregiver can act appropriately to each of the alarm states should they occur during treatment.
The alarm 60 can be audible, visual, or a combination thereof. The events may be any number of occurrences relating to the treatment of the patient, such as, for example, measurement of an elapsed time between events, measurement of a value of a treatment parameter, an occurrence relating to operation of the pump, an identification or determination made by the pump or an external device, etc.
In a particular embodiment, the second event can be defined by an amount of time that has expired since the first alarm state has been activated without being addressed by a caregiver. In such a case, the first and second events can be related to the same treatment parameter and the second alarm state is activated only when the particular amount of time has expired since activation of the first alarm state. The second alarm state may be in any form as described herein, such as, for example, an escalation of the frequency or tone of the first alarm state.
In yet another particular embodiment, the second event may be defined by a deviation from a particular value or range of values of a treatment parameter. In such a case, the first and second events can be related to the same treatment parameter. The first event may be defined by a first deviation value or range with respect to an original value of the treatment parameter and the second event may be defined by a second deviation value or range, wherein the second event may be measured with respect to either the original value of the treatment parameter or the first event. The original value may be a predetermined value, either pre-programmed or obtained by an external source. In this particular example, the second alarm state is activated only when a particular value of deviation has occurred with respect to the original value of the treatment parameter or the first event.
In yet another embodiment, the first and second events may be related to different treatment parameters. For example, if the events are each defined by a deviation from a particular value of a treatment parameter, the first and second alarm states would be activated by a deviation of its respective treatment parameters (i.e., first and second events). In such a case, the discernable alarm states would allow a caregiver to identify the particular event associated with the particular alarm state.
Preferably, the second alarm state is associated with an event that is critical, i.e., life-threatening to the patient or of a high level of importance that requires immediate attention, whereas the first alarm state is associated with an event that is non-critical, i.e, non-life-threatening to the patient or of a lower level of importance that does not require immediate attention. However, the alarm states can be customized to be associated with, or categorized by, any type of event or occurrence. The event can be any occurrence related to the treatment parameter, such as, for example, a deviation from the treatment parameter or a flag raised by a treatment protocol that is triggered by the treatment parameter. The events may be associated with administration of a fluid to a patient, a measurement from a patient, the operation of the pump, or any other aspect of treatment.
Referring to FIG. 2, a pump 80 is shown having three line sets 82 loaded therein to facilitate delivery of three fluid types to a patient. The pump 80 is preferably an infusion pump. Each of the line sets 82 is associated with a container 83 containing a fluid being delivered to the patient_ The pump 80 includes a user interface 84 having a display 86 that can be utilized for displaying a visual form of the alarm 60. Although not shown, a light indicator, such as an LED or other source of light, could be incorporated into the pump and act as a visual form of the alarm 60. FIG. 2 schematically depicts a first audible alarm state (1) and a second audible alarm state (2), wherein the second alarm state is discemable from the first alarm state because it is at a higher volume level than the first alarm state. The audible alarm states can also be discemable by tone, by frequency of an interval, by type of sound, or by any other means to create a perceptively different state between the two alarm states.
As already noted, the pump 80 of FIG. 2 can also incorporate a visual form of the alarm 60. As an example of a visual form of the alarm 60, FIG. 3 depicts a screenshot of the display 86 that shows an alert that may not be of a high level of importance and is therefore categorized..as a first alarm state. In this example, a caregiver enabled a callback feature relating to a piggyback function of the pump 80. Thus, when the piggyback infusion has been completed and the pump channel has switched over to the primary rate, a first alarm state is activated in the form of an alert as shown on the screenshot in FIG. 3.
As an example of a visual form of the alarm 60 in the second alarm state, FIG.

depicts a screenshot of the display 86 that shows an alert that may be of a high level of importance and is therefore categorized as a second alarm state. In this example, a channel of the pump 80 has failed and is out of service. Since this may be critical, a second alarm state is activated in the form shown on the screenshot in FIG. 4. It is understoodthat in such a case, an audible alarm may also be incorporated into the alarm state as well.
In certain instances, it may be desirable to allow a user to program certain events to be associated with a particular alarm state. Preferably such programming is done by personnel authorized by a hea]th care facility so that it can be in accordance with facility policy and procedures. In a particular embodiment, the second alarm state may be programmed to only be operational with a particular fluid, such as a particular drug. The alarm states can also be programmed to indicate drug interaction situations. In such embodiments, the identification of a particular fluid having an associated alarm, or data tables or libraries indicating potential drug interactions, can be stored in a memory associated with the pump.
As shown in FIG. 5, according to another aspect of the invention, the alarm system 52 and associated alarm 60 can be linked to one or more external sources or devices 100, such that the alarm system 52 can be utilized by these external sources. In such a case, the external source or device 100 would be associated with the treatment parameter to be monitored. For example, a heart rate monitor or a pulse oximeter may be connected to the alarm system 52 to allow treatment parameters of these devices, and events relating to the treatment parameters of these devices, to be associated with the alarm states of the alarm system 52. In such cases, there may be several external devices or sources that utilize the alarm system 52 to provide an effective multi-state alarm.
As shown in FIG. 5, according to yet another aspect of the invention, the alarm system 52 may be in communication with an external device or system 150 to allow routing of an alarm state signal to that external device or system. For example, the external system 150 may be a centralized server or computer that could allow an alarm state and associated information, such as the associated event, treatment parameter, device, patient identification, or the like, to be routed to other devices, such as another computer, a personal digital assistant (PDA), pager, wireless e-mail device, wireless telephone or communicator, or the like. Such an arrangement expands the effectiveness of a multi-state alarm system.
It is understood that the alarm system 52 is customizable in a variety of different methods. For example, the system 52 can be set such that a first drug is associated with an alarm escalation wherein the alarm has a first state and a second state as described above.
The system 52 is also set such that a second drug is not associated with an alarm escalation.
The system 52 can further be set such that in non-critical alarms, the pump continues to run.
However, with critical alarms, the pump is shut down..
FIG. 6 discloses a schematic diagram of yet another aspect of the alarm system 52 of the present invention. In this embodiment, the alarm system 52 incorporates a customizable near-end alert/alarm having a "snooze" feature 200, snooze element or delay element. This aspect allows a user to define or enable a second event 202 relative to a first event 204 or relative to when a caregiver addresses the first event 204. For example, the snooze feature 204 may define or enable the second event 202 in terms of: expiration of an amount of time relative to either the first event 204 or when a caregiver addresses the first event 204; reaching a value of a treatment parameter relative to either the first event 204 or when a caregiver addresses the first event 204; or any other type of data, information, or parameter that may change relative to either the first event 204 or when a caregiver addresses the first event 204.
When the second event 202 occurs, a second alarm state 206 is activated wherein the second alarm state 206 is discemable from a first alarm state 208 associated with the first event 204.
The snooze feature 200 may be configured such that additional events 210 may be thereafter defined, each associated with the second alarm state 206, or additional alarm states 212 that are all respectively discernable.
As already discussed above, in accordance with a particular embodiment, the second event 202 can be defined by an amount of time that has expired since the first alarm state 208 has been activated without being addressed by a caregiver. In a related aspect incorporating the snooze feature 200, when the caregiver addresses the first alarm state 208, the snooze feature 200 can be incorporated into the alarm system 52 to allow the caregiver to acknowledge the first event 204 and define the second event 202 in terms of a predetermined amount of time measured relative to either the first event 204 or when the caregiver addressed the first event 204, i.e. a snooze interval 214. When the snooze feature 200 is activated by the caregiver, the second alarm state 206 is enabled and the second event 202 is set by a predetermined value or preprogranuned data stored in a memory, or by data entered or obtained at the time of activation of the snooze feature 200, which represents the snooze interval 214. After expiration of the snooze interval 214, the second alarm state 206 is activated. The snooze feature 200 may be configured such that additional events 210 and associated snooze intervals may be thereafter defined by further activation of the snooze feature 200. The second alarm state 206, or one or more additional alarm states 212, may be associated with these additional events 210.
As mentioned above, in a particular embodiment, the snooze feature or snooze element 200 may define the second event 202 in terms of a predetermined value of a treatment parameter relative to the first event 204 or when a caregiver addresses the first event 204. In a specific example of this particular embodiment, the treatment parameter may be related to the volume of an infusion of a medicament, such as a fluid, to a patient. The first event 204 may be defined in terms of a predetermined volume level value or in terms of units of time remaining until a predetermined volume level value is reached during treatment of the patient by infusion. When the first event 204 occurs and the first alarm state 208 is activated, the caregiver may activate the snooze feature 200, which deactivates the first alarm state 208.
In this example, activation of the snooze feature 200 will define or enable the second event 202 in terms of a second volume level value or increment, or in terms of units of time until a 5 volume level value is reached during the treatment of the patient. When the particular value associated with the second event 202 is reached, the second alarm state 206 is activated. The snooze feature 200 may be configured such that additional events 210 may be thereafter defined by further activation of the snooze feature 200. The second alarm state 206, or one or more additional alarm states 212, may be associated with these additional events 210. When 10 the treatment parameter is related to the volume in an infusion application, the events can act as notifications to the caregiver that a particular point in the infusion treatment has been reached. Notification before the end of an infusion, i.e. a "near-end" alert, provides the caregiver the opportunity to avoid intertuption in therapy, unwanted changes in the rate of infusion, or other occurrences that may adversely affect treatment of the patient. To avoid such occurrences, the caregiver can use the time after notification and before the end of the infusion to prepare and set-up a new container or infusion kit.
In a particular embodiment, the alarm system 52 is in communication with a computer network 220 of a healthcare facility to allow communication with other devices or systems 222 within the facility. In such an embodiment, for example, a pharmacy of the facility can be automatically notified of one or more of the events so that a new container of fluid or drug can be prepared in time to avoid an interruption in the infusion therapy of the patient. The alarm system 52 can also be in direct communication, including wireless communication, with a device or system 224 to allow for various control options of the system or alarm state duplication or notification within the device or system 224. In addition, the alarm system 52 can be utilized for infusion of medicaments contained in flexible bags, syringes or semi-rigid containers. It is further understood that the alarm system 52 can occur on an infusion device such as an infusion pump shown in the Figures, but also on a handheld device, a nurse paging system or a central monitoring system.
It should be appreciated that the snooze feature 200 can be implemented in numerous applications in accordance with the principles of the present invention, and as disclosed in the configurations shown in FIGS. 1-5 and 8. For purposes of exemplification of a particular application of this feature and/or one or more other aspects of the present invention, the following example is provided and certain aspects thereof are schematically illustrated in FIG.
7. It should be understood that this example is one of many possible applications of the principles of the present invention and should in no way be construed to limit the scope of the present invention to the details of this particular example.
EXAMPLE
In this particular example, a customizable "near-end" alarm system 250 having a snooze feature 252 is provided for use in connection with an infusion pump used to deliver a medicament or fluid to a patient via infusion. The alarm system 250 is associated with the pump and can be incorporated into the pump, or a separate device or system, such as a personal digital assistant (PDA) or other portable computing device, a paging system, monitoring system, or other device, network, or system. The near-end alarm system 250 can be customizable to a specific drug infusion wherein the snooze feature 252 allows for notification to the caregiver before the end of the infusion. The notification is in the form of a first and/or a second alarm state 254 and 256 of the alann system 250, which can be audible, visual, or both. In this example, the alarm states 254 and 256 notify the caregiver that the infusion volume remaining will soon reach a predetermined value (which is zero in this case, although other values are possible) so that the caregiver can respond to the notification, such as by hanging a new fluid container and resetting the volume to be infused via the pump. This prevents the infusion from dropping to a lower rate. that could potentially adversely affect the patient's hemodynamic status.
In this example, a first event 260 is defined by the infusion volume reaching a first value or parameter X, which. can be preprogrammed; progranuned at the point of care for a specific drug infusion such as at the bedside; obtained via an identification or data associated with a line set or container, such as a barcode label, RFID, or the like;
obtained from an external device, such as a handheld device or other external device; or obtained from an external source via a network connection; or the like. Alternatively, the first event 260 can be defined by a value or parameter representing an amount of time remaining before the end of the infusion (for example, the number of minutes remaining before the end of the infusion).
The value associated with the first event 260 can be a component of a predetermined drug specific profile associated with a container of a specific drug or line set type. A second event 262 is also defined by the infusion volume reaching a second value or parameter Y, which can be programmed or obtained in similar fashion to that of the first value X. If desired, additional events defined by respective values may also be programmed.
When the first value X is reached during infusion, the first alarm state 254 is activated, thereby notifying the caregiver. The first value X could represent 30 minutes remaining before completion of the infusion. The caregiver can then activate the snooze feature.
Activation of the snooze feature 252 of the alarm system 250 allows the second event 262 to be set within the system so that upon occurrence of the second event 254, i.e., the infusion volume reaching the second value Y, the second alarm state 262 is activated to further notify the caregiver. In a preferred embodiment, the second alarm state 262 is discemable from the first alarm state 260 to ensure that the caregiver will be notified of the second event 254, especially in critical applications. If additional events have been programmed, the snooze process can be continued for each of the additional events. In a particular embodiment with only two programmed events, the first alarm state 252 and/or the second alarm state 254 comprises an escalating alarm that escalates as the volume value (or time value) decreases from the second value to notify the caregiver of the rate of decreasing volume (or time).
Depending on the type of alarm, the escalation could be in the form of an increase in volume, a change in the type of tone, a change in the interval or frequency of the tone, the activation of, or a change in appearance of, one or more visual indicators, or any combination thereof.
This escalation process can also be incorporated in embodiments having more than two events and associated alarm states. The alarm system 52 could have a more urgent (using any of the discernable alerts described above) near-end alert/alarm for a designated high alert or in critical infusion therapies.
In a particular embodiment, the alarm system 250 is in communication with a computer network 270 of the healthcare facility to allow communication with other systems 272 within the facility. In such an embodiment, for example, a pharmacy of the facility can be automatically notified of one or more of the events so that a new container of fluid or drug can be prepared in time to avoid an interruption in the infusion therapy of the patient.
With such features of the alarm system 52, a clinician is alerted that a volume to be infused will soon be zero so the clinician can respond to the alert, set up a new container and reset the volume to be infused. This prevents an infusion from dropping to an unwanted or undesirable lower rate and also prevents an interruption of therapy. The delay or snooze feature is completely customizable wherein the alarm system 52 can be configured as desired.
FIG. 8 shows another embodiment of an alarm system of the present invention, generally designated with the reference numeral 352. The alarm system 352 is similar to the embodiments described above, however, the alarm system 352 is utilized with a disposable element or micro electro-mechanical system (MEMS) element. In one preferred embodiment, the MEMS element is a MEMS pump. It is understood, however, that the pump could be any type of disposable pump including pumps micro-molded in plastic or otherwise manufactured on a small scale. As shown in FIG. 6, alarm system 352 may be used in conjunction with a medication delivery system, generally designated with the reference numeral 300. The system 100 generally includes a medical device 312, preferably a MEMS pump 312, which may have an associated controller 330, an administration line set 314, a container 316. The system 100 may also take the form of any of the systems such as disclosed in commonly-owned U.S. Patent Application Number 10/040,887, entitled "Infusion System,"
which application is expressly incorporated by reference herein.
The container 316 is a container similar to the container 16 described above.
In one preferred embodiment, the container 316 is a flexible bag adapted to contain a medication such as a medicament or medical fluid. The administration line set 314 is similar the line set 14 described above. The line set 314 includes a tubing having one end connected to or otherwise in communication with the container 316 and another end having a catheter or other device for communication with the patient.
As further shown in FIG. 5, the MEMS pump 312 is operably associated with the line set 314. The MEMS pump 312 may be connected to the line set 314 in various configurations. For example, the MEMS pump 312 may have an inlet port 320 and an outlet port 322 wherein the MEMS pump 312 is connected at an intermediate portion of the line set 314. Accordingly, a portion of the line set 314 is connected to the inlet port and a portion of the line set 314 is connected to the outlet port 322 wherein the MEMS pump 312 is operably connected to the line set 314. Once properly connected, the MEMS pump 312 can pump fluid from the container 316 to the patient.
As discussed, the pump 312 may be a MEMS pump 312. MEMS devices are typically etched in silicon. It is further understood that MEMS may also describe other types of micro electromechanical system devices such as devices that are micro-molded in plastic. Thus, MEMS devices may include devices etched in silicon, molded in plastic or otherwise fabricated on a small scale.

As discussed, the system 300 may further use the controller 330. The controller 330 is operably associated with the MEMS pump 312. The controller 330 may communicate with the MEMS pump 312 via a wireless connection. Alternatively, a hard connection may be utilized wherein the MEMS pump 312 may be plugged into the controller 330.
While the controller 330 is shown as a separate component in one preferred embodiment, it is understood that the controller 330 may be integral with the MEMS pump 312.
Similar to the discussion above, the controller 330 incorporates the alarm system 352.
The alarm system 352 operates with the controller 330 and in cooperation with the MEMS
pump 312. It is further understood that the alarm system 352 could be integral with the pump 312. The alarm system 352 is customizable and may include all of the features of the alarm systems previously described. Thus, as described, the alarm system 352 may include multiple alarm states that are discernable from one another. The alarm system 352 may also include the near-end alert/alarm feature as discussed above.
It is further understood that a pump utilized in the present invention will incorporate safety software. The safety software is capable of generating basic failure alarms wherein the pump would assume a fail safe condition such as no free flow of medicament through the pump. Various software/pump configurations may be utilized. For example, all software may be located on the pump head, or all software may be located off of, or remote from the pump head. In addition, all software may be located off of the pump head with the exception of the specific safety software being located on the pump head.
It should be understood that the invention may be embodied in other specific forms without departing from the spirit or ceritral characteristics thereof. The present embodiments, therefore, are to be considered in all respects illustrative and not restrictive, and the invention is not to be limited to the details given herein.

Claims (44)

CA2567480A2004-05-272005-04-19Multi-state alarm system for a medical pumpExpired - Fee RelatedCA2567480C (en)

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
US10/855,8572004-05-27
US10/855,857US8961461B2 (en)2004-05-272004-05-27Multi-state alarm system for a medical pump
PCT/US2005/013283WO2005118028A1 (en)2004-05-272005-04-19Multi-state alarm system for a medical pump

Publications (2)

Publication NumberPublication Date
CA2567480A1true CA2567480A1 (en)2005-12-15
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Families Citing this family (101)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
AU2003245872A1 (en)2002-07-242004-02-09M 2 Medical A/SAn infusion pump system, an infusion pump unit and an infusion pump
WO2004056412A2 (en)2002-12-232004-07-08M2 Medical A/SA disposable, wearable insulin dispensing device, a combination of such a device and a programming controller and a method of controlling the operation of such a device
CN1726059A (en)2002-11-052006-01-25M2医药有限公司 Disposable wearable insulin dispensing device, combination of the device and a program controller and method for controlling the operation of the device
AU2003291963A1 (en)2002-12-232004-07-14M 2 Medical A/SFlexible piston rod
US7753879B2 (en)2004-01-292010-07-13M2 Group Holdings, Inc.Disposable medicine dispensing device
US7927313B2 (en)*2004-05-272011-04-19Baxter International Inc.Medical device configuration based on recognition of identification information
US8961461B2 (en)2004-05-272015-02-24Baxter International Inc.Multi-state alarm system for a medical pump
EP1877115A1 (en)2005-04-062008-01-16M 2 Medical A/SAn actuator
US8409142B2 (en)2005-09-262013-04-02Asante Solutions, Inc.Operating an infusion pump system
US8057436B2 (en)*2005-09-262011-11-15Asante Solutions, Inc.Dispensing fluid from an infusion pump system
DK1933902T3 (en)2005-09-262015-03-23Asante Solutions IncInfusion Pump WITH A DRIVE THAT HAVE AN PALLEGEME- AND CONGEST HAGE-COMBINATION
US8551046B2 (en)2006-09-182013-10-08Asante Solutions, Inc.Dispensing fluid from an infusion pump system
US7534226B2 (en)2005-09-262009-05-19M2 Group Holdings, Inc.Dispensing fluid from an infusion pump system
US8105279B2 (en)2005-09-262012-01-31M2 Group Holdings, Inc.Dispensing fluid from an infusion pump system
US20070106126A1 (en)*2005-09-302007-05-10Mannheimer Paul DPatient monitoring alarm escalation system and method
WO2007056592A2 (en)2005-11-082007-05-18M2 Medical A/SMethod and system for manual and autonomous control of an infusion pump
US8475408B2 (en)2005-11-082013-07-02Asante Solutions, Inc.Infusion pump system
US10010669B2 (en)*2006-02-092018-07-03Deka Products Limited PartnershipSystems and methods for fluid delivery
US8149131B2 (en)2006-08-032012-04-03Smiths Medical Asd, Inc.Interface for medical infusion pump
US20080056143A1 (en)*2006-08-312008-03-06Motorola, Inc.Method and apparatus to facilitate user interface configuration-based accommodation of operational constraints
US7833196B2 (en)2007-05-212010-11-16Asante Solutions, Inc.Illumination instrument for an infusion pump
US7892199B2 (en)2007-05-212011-02-22Asante Solutions, Inc.Occlusion sensing for an infusion pump
US7981102B2 (en)2007-05-212011-07-19Asante Solutions, Inc.Removable controller for an infusion pump
US7794426B2 (en)2007-05-212010-09-14Asante Solutions, Inc.Infusion pump system with contamination-resistant features
US7717903B2 (en)2007-09-062010-05-18M2 Group Holdings, Inc.Operating an infusion pump system
US7828528B2 (en)2007-09-062010-11-09Asante Solutions, Inc.Occlusion sensing system for infusion pumps
US7879026B2 (en)2007-09-072011-02-01Asante Solutions, Inc.Controlled adjustment of medicine dispensation from an infusion pump device
US8287514B2 (en)2007-09-072012-10-16Asante Solutions, Inc.Power management techniques for an infusion pump system
US7935076B2 (en)2007-09-072011-05-03Asante Solutions, Inc.Activity sensing techniques for an infusion pump system
US8032226B2 (en)2007-09-072011-10-04Asante Solutions, Inc.User profile backup system for an infusion pump device
GB0723855D0 (en)2007-12-062008-01-16Smith & NephewApparatus and method for wound volume measurement
WO2009124134A2 (en)*2008-04-012009-10-08Smiths Medical Md, Inc.Software features for medical infusion pump
ITMI20080845A1 (en)*2008-05-092009-11-10Gambro Lundia Ab MEDICAL MACHINE FOR THE TREATMENT OF FLUIDS
US20090326340A1 (en)*2008-06-302009-12-31Hui WangPatient Monitor Alarm System And Method
US7959598B2 (en)2008-08-202011-06-14Asante Solutions, Inc.Infusion pump systems and methods
US8487758B2 (en)*2009-09-022013-07-16Medtronic Minimed, Inc.Medical device having an intelligent alerting scheme, and related operating methods
USD669165S1 (en)2010-05-272012-10-16Asante Solutions, Inc.Infusion pump
GB201015656D0 (en)2010-09-202010-10-27Smith & NephewPressure control apparatus
US8852152B2 (en)2011-02-092014-10-07Asante Solutions, Inc.Infusion pump systems and methods
US9067003B2 (en)2011-05-262015-06-30Kalypto Medical, Inc.Method for providing negative pressure to a negative pressure wound therapy bandage
US8585657B2 (en)2011-06-212013-11-19Asante Solutions, Inc.Dispensing fluid from an infusion pump system
AU2012299169B2 (en)2011-08-192017-08-24Icu Medical, Inc.Systems and methods for a graphical interface including a graphical representation of medical data
US8808230B2 (en)2011-09-072014-08-19Asante Solutions, Inc.Occlusion detection for an infusion pump system
US9053520B2 (en)2011-10-172015-06-09Carefusion 303, Inc.Associating an information reader and a medical device
US9084845B2 (en)2011-11-022015-07-21Smith & Nephew PlcReduced pressure therapy apparatuses and methods of using same
US8454557B1 (en)2012-07-192013-06-04Asante Solutions, Inc.Infusion pump system and method
US8454562B1 (en)2012-07-202013-06-04Asante Solutions, Inc.Infusion pump system and method
AU2013296555B2 (en)2012-07-312017-10-19Icu Medical, Inc.Patient care system for critical medications
US9119529B2 (en)*2012-10-302015-09-01Dexcom, Inc.Systems and methods for dynamically and intelligently monitoring a host's glycemic condition after an alert is triggered
US9427523B2 (en)2012-12-102016-08-30Bigfoot Biomedical, Inc.Infusion pump system and method
WO2014091329A1 (en)2012-12-132014-06-19Koninklijke Philips N.V.Monitoring apparatus and method for monitoring vital functions of a patient
US20140276536A1 (en)2013-03-142014-09-18Asante Solutions, Inc.Infusion Pump System and Methods
CN103914006A (en)*2012-12-292014-07-09北京谊安医疗系统股份有限公司Circuit for controlling waveform of edge of audio envelope line
US9446186B2 (en)2013-03-012016-09-20Bigfoot Biomedical, Inc.Operating an infusion pump system
US9177108B2 (en)2013-03-132015-11-03Carefusion 303, Inc.Multiple infusion channel data graphical user interface
AU2014239597B2 (en)2013-03-152018-03-22Gambro Lundia AbExtracorporeal blood treatment apparatus with reservoir status lights
US10352316B2 (en)*2013-04-172019-07-16Ncr CorporationSystems and methods for evaluating fuel pump data
US9446187B2 (en)2013-06-032016-09-20Bigfoot Biomedical, Inc.Infusion pump system and method
US9457141B2 (en)2013-06-032016-10-04Bigfoot Biomedical, Inc.Infusion pump system and method
US10476921B2 (en)2013-06-122019-11-12Carefusion 303, Inc.System event notification
CN105377444B (en)*2013-07-192022-03-11固瑞克明尼苏达有限公司 Differential pressure monitoring of injection system
US9561324B2 (en)2013-07-192017-02-07Bigfoot Biomedical, Inc.Infusion pump system and method
CN104415423A (en)*2013-08-292015-03-18赵百华Medical automatic alarming and tube closing infusion set
US10569015B2 (en)2013-12-022020-02-25Bigfoot Biomedical, Inc.Infusion pump system and method
US9424020B2 (en)2014-01-132016-08-23Carefusion 303, Inc.Remote flashing during infusion
US9629901B2 (en)2014-07-012017-04-25Bigfoot Biomedical, Inc.Glucagon administration system and methods
US10137246B2 (en)2014-08-062018-11-27Bigfoot Biomedical, Inc.Infusion pump assembly and method
US9919096B2 (en)2014-08-262018-03-20Bigfoot Biomedical, Inc.Infusion pump system and method
CN104546358B (en)*2015-01-142017-03-08曹俊霞Medical nursing combined bay
US10850024B2 (en)2015-03-022020-12-01Icu Medical, Inc.Infusion system, device, and method having advanced infusion features
US9878097B2 (en)2015-04-292018-01-30Bigfoot Biomedical, Inc.Operating an infusion pump system
WO2016191388A1 (en)*2015-05-232016-12-01Lux Jason DanielHydration system
JP7091240B2 (en)2015-09-252022-06-27シー・アール・バード・インコーポレーテッド Catheter assembly including monitoring capability
US10449294B1 (en)2016-01-052019-10-22Bigfoot Biomedical, Inc.Operating an infusion pump system
AU2016385454B2 (en)2016-01-052021-12-16Bigfoot Biomedical, Inc.Operating multi-modal medicine delivery systems
HK1256995A1 (en)2016-01-142019-10-11Bigfoot Biomedical, Inc.Occlusion resolution in medication delivery devices, systems, and methods
USD809134S1 (en)2016-03-102018-01-30Bigfoot Biomedical, Inc.Infusion pump assembly
CA3023658C (en)2016-05-132023-03-07Icu Medical, Inc.Infusion pump system and method with common line auto flush
AU2017335762B2 (en)2016-09-272022-03-17Bigfoot Biomedical, Inc.Medicine injection and disease management systems, devices, and methods
EP3500161A4 (en)2016-12-122020-01-08Bigfoot Biomedical, Inc. ALARMS AND WARNINGS FOR MEDICINE DELIVERY DEVICES AND RELATED SYSTEMS AND METHODS
USD836769S1 (en)2016-12-122018-12-25Bigfoot Biomedical, Inc.Insulin delivery controller
USD839294S1 (en)2017-06-162019-01-29Bigfoot Biomedical, Inc.Display screen with graphical user interface for closed-loop medication delivery
EP3651647A1 (en)2017-07-132020-05-20Bigfoot Biomedical, Inc.Multi-scale display of blood glucose information
US10089055B1 (en)2017-12-272018-10-02Icu Medical, Inc.Synchronized display of screen content on networked devices
CN108057138A (en)*2017-12-282018-05-22金华市中心医院The monitoring device and method of blood dialysis solution use state
JP7058754B2 (en)*2018-04-192022-04-22ベクトン・ディキンソン・アンド・カンパニー System, method, and computer program products for identifying device connections
US20210241605A1 (en)*2018-05-072021-08-05Buzz Labs, Inc.Wearable device and system for personal wellbeing
CN108969838B (en)*2018-09-142022-02-25孟祥宝Automatic medicine changing monitoring control system for infusion
CN109568724B (en)*2018-11-142021-04-02南京大学Infusion dripping speed monitoring system based on RFID passive sensing and working method thereof
US10421655B1 (en)2019-05-172019-09-24Arapaho Technologies Inc.Portable hydration system
FI20195706A1 (en)*2019-08-272021-02-28Monidor Oy Counter device
WO2021087228A1 (en)2019-11-012021-05-06Terumo Cardiovascular Systems CorporationSemi-autonomous medical systems and methods
US11278671B2 (en)2019-12-042022-03-22Icu Medical, Inc.Infusion pump with safety sequence keypad
CN111110956A (en)*2019-12-272020-05-08武汉大学Infusion automatic alarm system and method based on machine vision and FPGA
KR20220124749A (en)2020-01-072022-09-14바드 액세스 시스템즈, 인크. DIAGNOSTIC SYSTEMS AND METHODS INCLUDING TEMPERATURE-SENSING VASCULAR DEVICES
WO2021207280A1 (en)*2020-04-072021-10-14Icu Medical, Inc.Infusion pump with alarm manager
CA3189781A1 (en)2020-07-212022-01-27Icu Medical, Inc.Fluid transfer devices and methods of use
US11135360B1 (en)2020-12-072021-10-05Icu Medical, Inc.Concurrent infusion with common line auto flush
US20240382164A1 (en)*2021-09-302024-11-21Eoflow Co., Ltd.Method for differentially providing alarm, and recording medium
KR102619177B1 (en)*2021-09-302023-12-29이오플로우(주)Method and recording medium to provide differential alarm alerts
USD1091564S1 (en)2021-10-132025-09-02Icu Medical, Inc.Display screen or portion thereof with graphical user interface for a medical device

Family Cites Families (216)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US5935099A (en)1992-09-091999-08-10Sims Deltec, Inc.Drug pump systems and methods
US6241704B1 (en)1901-11-222001-06-05Sims Deltec, Inc.Drug pump systems and methods
NL7004874A (en)*1970-04-041971-10-06
US4370983A (en)1971-01-201983-02-01Lichtenstein Eric StefanComputer-control medical care system
US3877428A (en)*1973-04-301975-04-15Sorenson Research CoVariable infusion control device
US3925762A (en)1973-10-251975-12-09Gen ElectricPatient monitoring and data processing system
NL7415966A (en)*1974-12-091976-06-11Philips Nv METHOD AND ORGANIZATION FOR STORING BINARY INFORMATION ELEMENTS.
US4079736A (en)1976-05-241978-03-21ValleylabCombination drug administration device and alarm system and method
GB1549402A (en)1976-09-281979-08-08Pye LtdApparatus for delivering fluids with controlled rate of flow
US4216462A (en)1978-03-061980-08-05General Electric CompanyPatient monitoring and data processing system
US4321461A (en)1980-04-181982-03-23K/W/D AssociatesFlow rate monitor and totalizer with count display
US4431425A (en)*1981-04-281984-02-14Quest Medical, Inc.Flow fault sensing system
US4391598A (en)1981-04-281983-07-05Quest Medical, Inc.Intravenous drug additive delivery system with electronic control
US4529401A (en)1982-01-111985-07-16Cardiac Pacemakers, Inc.Ambulatory infusion pump having programmable parameters
US4493709A (en)*1982-01-251985-01-15Quest Medical, Inc.Metering device for intravenous fluids
US4498843A (en)*1982-08-021985-02-12Schneider Philip HInsulin infusion pump
EP0107150B2 (en)1982-10-181992-04-15Siemens AktiengesellschaftMedicine-delivering apparatus
US4493704A (en)*1982-11-291985-01-15Oximetrix, Inc.Portable fluid infusion apparatus
DE3302214A1 (en)1983-01-241984-07-26Siemens AG, 1000 Berlin und 8000 München ARRANGEMENT FOR FLOW REGULATING LIQUID
US4553958A (en)1983-02-041985-11-19Quest Medical, Inc.IV Delivery controller
JPS6075903A (en)*1983-09-301985-04-30Matsushita Electric Works LtdSequence controller
US5108367A (en)*1984-02-081992-04-28Abbott LaboratoriesPressure responsive multiple input infusion system
US5100380A (en)*1984-02-081992-03-31Abbott LaboratoriesRemotely programmable infusion system
IL74236A (en)1984-02-081990-07-12Omni Flow IncInfusion system having plural fluid input ports and at least one patient output port
US4828545A (en)*1984-02-081989-05-09Omni-Flow, Inc.Pressure responsive multiple input infusion system
US4810243A (en)*1985-01-181989-03-07Intelligent Medicine, Inc.Device and method for effecting application of a therapeutic agent
US4756706A (en)*1985-01-231988-07-12American Hospital Supply CorporationCentrally managed modular infusion pump system
US4840542A (en)*1985-03-271989-06-20Quest Medical, Inc.Infusion pump with direct pressure sensing
US4657490A (en)*1985-03-271987-04-14Quest Medical, Inc.Infusion pump with disposable cassette
CA1274737A (en)1985-08-081990-10-02Joanna SchoonMethod and apparatus for automatic profiled infusion in cyclic tpn
US4710166A (en)1985-11-081987-12-01Quest Medical, Inc.Automated drug additive infusion system
FR2593951B1 (en)*1986-02-031989-01-06Bertin & Cie METHOD AND SYSTEM FOR REMOTE CONTROL OF AT LEAST ONE INFUSION STATION
US4714462A (en)1986-02-031987-12-22Intermedics Infusaid, Inc.Positive pressure programmable infusion pump
US4857713A (en)1986-02-141989-08-15Brown Jack DHospital error avoidance system
US5527274A (en)*1986-06-091996-06-18Development Collaborative CorporationCatheter for chemical contact dissolution of gallstones
US4715385A (en)1986-09-261987-12-29Marquette Electronics, Inc.Patient monitoring system having transportable data module and display unit
US4895161A (en)*1986-09-261990-01-23Marquette ElectronicsTransportable data module and display unit for patient monitoring system
US4741736A (en)*1986-12-101988-05-03I-Flow CorporationProgrammable infusion pump
US4842584A (en)*1987-05-011989-06-27Abbott LaboratoriesDisposable fluid infusion pumping chamber cassette and drive mechanism thereof
US4857048A (en)1987-05-291989-08-15Hewlett-Packard CompanyIV pump and disposable flow chamber with flow control
EP0434672B1 (en)1987-06-191994-12-14The University Of MelbourneInfusion pump
IL86010A (en)1987-07-031993-02-21Hi Bridge KkApparatus for measuring blood pressure
US4878175A (en)1987-11-031989-10-31Emtek Health Care SystemsMethod for generating patient-specific flowsheets by adding/deleting parameters
US4838887A (en)*1987-12-151989-06-13Shiley Infusaid Inc.Programmable valve pump
US4820273A (en)*1988-03-011989-04-11Eaton CorporationImplantable medication infusion device and bolus generator therefor
DE3812584A1 (en)*1988-04-131989-10-26Mic Medical Instr Corp DEVICE FOR BIOFEEDBACK CONTROL OF BODY FUNCTIONS
US4931050A (en)*1988-04-131990-06-05Shiley Infusaid Inc.Constant pressure variable flow pump
US5246347A (en)1988-05-171993-09-21Patients Solutions, Inc.Infusion device with disposable elements
US4943279A (en)1988-09-301990-07-24C. R. Bard, Inc.Medical pump with infusion controlled by a detachable coded label
US5077666A (en)1988-11-071991-12-31Emtek Health Care Systems, Inc.Medical information system with automatic updating of task list in response to charting interventions on task list window into an associated form
US5072383A (en)1988-11-191991-12-10Emtek Health Care Systems, Inc.Medical information system with automatic updating of task list in response to entering orders and charting interventions on associated forms
US5153827A (en)*1989-01-301992-10-06Omni-Flow, Inc.An infusion management and pumping system having an alarm handling system
US5205819A (en)*1989-05-111993-04-27Bespak PlcPump apparatus for biomedical use
US5325478A (en)1989-09-151994-06-28Emtek Health Care Systems, Inc.Method for displaying information from an information based computer system
US4978335A (en)1989-09-291990-12-18Medex, Inc.Infusion pump with bar code input to computer
US5017192A (en)1989-10-201991-05-21Minnesota Mining And Manufacturing CompanyFree flow prevention system for infusion pump
US5049141A (en)1990-04-251991-09-17Infusaid, Inc.Programmable valve pump
US5078683A (en)*1990-05-041992-01-07Block Medical, Inc.Programmable infusion system
US5108372A (en)*1990-12-121992-04-28Houston Advanced Research CenterIntravenous fluid temperature regulation method and apparatus
US5486286A (en)*1991-04-191996-01-23Althin Medical, Inc.Apparatus for performing a self-test of kidney dialysis membrane
US5207666A (en)*1991-08-301993-05-04Infusaid, Inc.Passive shuttle metering device for implantable drug delivery system
US5219330A (en)1991-11-261993-06-15Imed CorporationMethod and apparatus for preprogrammed infusion of iv medicaments
US5274551A (en)1991-11-291993-12-28General Electric CompanyMethod and apparatus for real-time navigation assist in interventional radiological procedures
WO1993012828A1 (en)1991-12-201993-07-08Abbott LaboratoriesDrug channel identification and security system for infusion and pumping systems
US5295966A (en)*1992-04-291994-03-22Becton, Dickinson And CompanySyringe pump with biased lockable syringe clamp
FR2690622B1 (en)1992-04-291995-01-20Chronotec Programmable ambulatory infusion pump system.
JP3660678B2 (en)1992-10-152005-06-15ザ ゼネラル ホスピタル コーポレーション Infusion pump with electronically loadable drug library
US5378231A (en)*1992-11-251995-01-03Abbott LaboratoriesAutomated drug infusion system
US5314243A (en)*1992-12-041994-05-24Automated Healthcare, Inc.Portable nursing center
DE69318850T2 (en)*1992-12-111998-10-22Siemens Medical Systems Inc DOCKING STATION FOR PATIENT MONITORING SYSTEM
ATE186187T1 (en)1992-12-161999-11-15Siemens Medical Systems Inc PATIENT SITE AND PATIENT DATA MONITORING SYSTEM
US5368555A (en)*1992-12-291994-11-29Hepatix, Inc.Organ support system
US5438510A (en)1993-03-031995-08-01Deka Products Limited PartnershipUser interface and monitoring functions for automated peritoneal dialysis systems
US5395340A (en)*1993-03-151995-03-07Lee; Tzium-ShouInfusion pump and a method for infusing patients using same
US5558638A (en)1993-04-301996-09-24Healthdyne, Inc.Patient monitor and support system
US5645531A (en)1993-05-261997-07-08Quest Medical, Inc.Constant pressure blood mixture delivery system and method
DE4320365C2 (en)*1993-06-192000-07-13Uvo Hoelscher Multi-channel dosing system
AU7323994A (en)1993-07-131995-02-13Sims Deltec, Inc.Medical pump and method of programming
US5368562A (en)*1993-07-301994-11-29Pharmacia Deltec, Inc.Systems and methods for operating ambulatory medical devices such as drug delivery devices
BE1007769A3 (en)*1993-11-121995-10-17Philips Electronics NvMedical device with rotating parts between running cables.
US5379333A (en)*1993-11-191995-01-03General Electric CompanyVariable dose application by modulation of x-ray tube current during CT scanning
US5400378A (en)*1993-11-191995-03-21General Electric CompanyDynamic dose control in multi-slice CT scan
US5531697A (en)1994-04-151996-07-02Sims Deltec, Inc.Systems and methods for cassette identification for drug pumps
EP0672427A1 (en)1994-03-171995-09-20Siemens-Elema ABSystem for infusion of medicine into the body of a patient
ATE245040T1 (en)1994-05-132003-08-15Abbott Lab DISPOSABLE INFUSION CASSETTE WITH A PUSH-BUTTON OPERATED APSOCKET VALVE
US5522798A (en)1994-10-171996-06-04Abbott LaboratoriesControl of a multi-channel drug infusion pump using a pharmacokinetic model
US5573506A (en)*1994-11-251996-11-12Block Medical, Inc.Remotely programmable infusion system
LU88565A1 (en)*1994-12-071996-07-15Midex Marketing Ltd Device for monitoring the flow rate of an intravenous infusion
US5685844A (en)1995-01-061997-11-11Abbott LaboratoriesMedicinal fluid pump having multiple stored protocols
US5591344A (en)*1995-02-131997-01-07Aksys, Ltd.Hot water disinfection of dialysis machines, including the extracorporeal circuit thereof
US5778882A (en)1995-02-241998-07-14Brigham And Women's HospitalHealth monitoring system
US5814015A (en)1995-02-241998-09-29Harvard Clinical Technology, Inc.Infusion pump for at least one syringe
US5628619A (en)1995-03-061997-05-13Sabratek CorporationInfusion pump having power-saving modes
US5795327A (en)1995-03-061998-08-18Sabratek CorporationInfusion pump with historical data recording
US5640953A (en)1995-03-091997-06-24Siemens Medical Systems, Inc.Portable patient monitor reconfiguration system
US5713856A (en)*1995-03-131998-02-03Alaris Medical Systems, Inc.Modular patient care system
US5941846A (en)1995-03-131999-08-24Alaris Medical Systems, Inc.Method and apparatus for power connection in a modular patient care system
SE9501678D0 (en)1995-05-051995-05-05Siemens Elema Ab Device for transmitting information via patient tube in intensive care or anesthesia apparatus
US5772635A (en)1995-05-151998-06-30Alaris Medical Systems, Inc.Automated infusion system with dose rate calculator
US5781442A (en)1995-05-151998-07-14Alaris Medical Systems, Inc.System and method for collecting data and managing patient care
US5676644A (en)1995-06-071997-10-14Cobe Laboratories, Inc.Extracorporeal blood processing methods and apparatus
US5718562A (en)*1995-11-021998-02-17Abbott LaboratoriesInterface module for use with an NCT-based pumping mechanism and NCT-based cassette
US5807321A (en)1995-11-281998-09-15Merit MedicalSystem for electronically monitoring the delivery of contrast media
US5745378A (en)*1995-12-041998-04-28Abbott LaboratoriesParameter input for drug delivery pump
AUPN707195A0 (en)*1995-12-121996-01-11University Of Melbourne, TheField programmable intravenous infusion system
US5830187A (en)1995-12-221998-11-03Science IncorporatedFluid delivery device with conformable ullage and fill assembly
US5752917A (en)*1996-03-191998-05-19Siemens Medical Systems, Inc.Network connectivity for a portable patient monitor
US5782805A (en)1996-04-101998-07-21Meinzer; RandolphMedical infusion pump
GB9607471D0 (en)1996-04-101996-06-12Baxter IntVolumetric infusion pump
SE507940C2 (en)1996-04-231998-08-03Asea Brown Boveri Set of devices for transmitting electrical signals
DE29607525U1 (en)1996-04-251996-06-20Siemens AG, 80333 München Modular, modularly expandable peripheral device with self-establishing electrical connection
US6308171B1 (en)1996-07-302001-10-23Carlos De La HuergaMethod and system for automated data storage and retrieval
US6434567B1 (en)1996-07-302002-08-13Carlos De La HuergaMethod for specifying enterprise-wide database address formats
US6345268B1 (en)*1997-06-092002-02-05Carlos De La HuergaMethod and system for resolving temporal descriptors of data records in a computer system
US6272505B1 (en)1998-07-072001-08-07Carlos De La HuergaDocument modification based hyperlink limiting method and apparatus
US5903889A (en)*1997-06-091999-05-11Telaric, Inc.System and method for translating, collecting and archiving patient records
US6117126A (en)1996-08-292000-09-12Bausch & Lomb Surgical, Inc.Surgical module with independent microprocessor-based communication
DE19635237A1 (en)*1996-08-301998-03-05Siemens Ag Storage system
ES2198582T3 (en)1996-09-032004-02-01Koninklijke Philips Electronics N.V. INFORMATION SUPPORT, READING / WRITING DEVICE AND READING DEVICE FOR RECORDING AND / OR READING INFORMATION BLOCKS.
US5897498A (en)*1996-09-251999-04-27Atl Ultrasound, Inc.Ultrasonic diagnostic imaging system with electronic message communications capability
US5938607A (en)1996-09-251999-08-17Atl Ultrasound, Inc.Ultrasonic diagnostic imaging system with access to reference image library
US6401138B1 (en)1996-10-282002-06-04Koninklijke Philips Electronics N.V.Interface for patient context sharing and application switching
US5957885A (en)*1996-11-061999-09-28Alaris Medical Systems, Inc.Oximetry monitored, patient controlled analgesia system
DE19650115C1 (en)1996-12-031998-07-02Fraunhofer Ges Forschung Medication dosing device
US5810770A (en)1996-12-131998-09-22Stryker CorporationFluid management pump system for surgical procedures
US5883576A (en)*1998-01-141999-03-16De La Huerga; CarlosIdentification bracelet with electronics information
US6255951B1 (en)1996-12-202001-07-03Carlos De La HuergaElectronic identification bracelet
US5852590A (en)1996-12-201998-12-22De La Huerga; CarlosInteractive label for medication containers and dispensers
US6346886B1 (en)*1996-12-202002-02-12Carlos De La HuergaElectronic identification apparatus
US6259654B1 (en)1997-03-282001-07-10Telaric, L.L.C.Multi-vial medication organizer and dispenser
US6522425B2 (en)*1997-02-042003-02-18Fuji Photo Film Co., Ltd.Method of predicting and processing image fine structures
US7978564B2 (en)1997-03-282011-07-12Carlos De La HuergaInteractive medication container
US7061831B2 (en)1997-03-282006-06-13Carlos De La HuergaProduct labeling method and apparatus
US5960085A (en)1997-04-141999-09-28De La Huerga; CarlosSecurity badge for automated access control and secure data gathering
US5930804A (en)*1997-06-091999-07-27Philips Electronics North America CorporationWeb-based biometric authentication system and method
US6012034A (en)*1997-08-182000-01-04Becton, Dickinson And CompanySystem and method for selecting an intravenous device
USD410081S (en)*1997-08-221999-05-18Bridge Medical, Inc.Medication infusion device
US6044134A (en)*1997-09-232000-03-28De La Huerga; CarlosMessaging system and method
US6108399A (en)1998-01-152000-08-22Siemens Medical Systems, Inc.System and method for dose monitoring in an intensity modulated radiation treatment system
US6216104B1 (en)*1998-02-202001-04-10Philips Electronics North America CorporationComputer-based patient record and message delivery system
DE19809563A1 (en)1998-03-051999-09-09Siemens AgMedical work station for treating patient
US6468242B1 (en)1998-03-062002-10-22Baxter International Inc.Medical apparatus with patient data recording
US6104941A (en)1998-03-262000-08-15Ge Marquette Medical Systems, Inc.Physiological sensor
US6342841B1 (en)*1998-04-102002-01-29O.I.A. LlcInfluent blockage detection system
US6283944B1 (en)1998-04-302001-09-04Medtronic, Inc.Infusion systems with patient-controlled dosage features
US6260021B1 (en)1998-06-122001-07-10Philips Electronics North America CorporationComputer-based medical image distribution system and method
US6558320B1 (en)*2000-01-202003-05-06Medtronic Minimed, Inc.Handheld personal data assistant (PDA) with a medical device and method of using the same
US6554798B1 (en)*1998-08-182003-04-29Medtronic Minimed, Inc.External infusion device with remote programming, bolus estimator and/or vibration alarm capabilities
US6141402A (en)1998-08-252000-10-31General Electric CompanyMethods and apparatus for dose verification in an imaging system
CA2345439C (en)1998-10-292005-08-09Minimed, Inc.Compact pump drive system
US6409659B1 (en)1998-11-042002-06-25Ge Medical Systems Information Technologies, Inc.Method and apparatus for displaying physiological patient data
CA2350741C (en)1998-11-092007-01-30Fisher & Paykel LimitedTop loading washing machine
US6164921A (en)1998-11-092000-12-26Moubayed; Ahmad MaherCurvilinear peristaltic pump having insertable tubing assembly
US6077055A (en)1998-12-032000-06-20Sims Deltec, Inc.Pump system including cassette sensor and occlusion sensor
US6213939B1 (en)*1998-12-102001-04-10Mcewen James AllenHazard monitor for surgical tourniquet systems
DE19858113C1 (en)*1998-12-162000-03-30Siemens AgData transmission method for radio communications system
US6358237B1 (en)*1999-01-192002-03-19Assistive Technology Products, Inc.Methods and apparatus for delivering fluids to a patient
US6231560B1 (en)1999-02-102001-05-15Baxter International IncMethod and apparatus for automatically controlling the level of medication
US6666665B1 (en)*1999-03-042003-12-23Baxter International Inc.Fluid delivery mechanism having a plurality of plungers for compressing a metering chamber
US6695823B1 (en)*1999-04-092004-02-24Kci Licensing, Inc.Wound therapy device
US6796956B2 (en)1999-04-302004-09-28Medtronic, Inc.Method and apparatus to control drug therapy dosages in an implantable pump
US6471675B1 (en)1999-04-302002-10-29Medtronic, Inc.Passive flow control devices for implantable pumps
US6560102B1 (en)2000-10-232003-05-06Belkin ComponentsUniversal serial bus docking station
US6264614B1 (en)1999-08-312001-07-24Data Critical CorporationSystem and method for generating and transferring medical data
US6554791B1 (en)*1999-09-292003-04-29Smisson-Cartledge Biomedical, LlcRapid infusion system
US7933780B2 (en)*1999-10-222011-04-26Telaric, LlcMethod and apparatus for controlling an infusion pump or the like
US6377223B1 (en)*1999-11-112002-04-23Ge Medical Systems Information Technologies, Inc.Portable patient monitor with antenna integrated into handle
US6519569B1 (en)*1999-12-012003-02-11B. Braun Medical, Inc.Security infusion pump with bar code reader
US6497680B1 (en)1999-12-172002-12-24Abbott LaboratoriesMethod for compensating for pressure differences across valves in cassette type IV pump
US6356780B1 (en)*1999-12-222002-03-12General Electric CompanyMethod and apparatus for managing peripheral devices in a medical imaging system
US6350239B1 (en)*1999-12-282002-02-26Ge Medical Systems Global Technology Company, LlcMethod and apparatus for distributed software architecture for medical diagnostic systems
US6471645B1 (en)1999-12-302002-10-29Medtronic, Inc.Communications system for an implantable device and a drug dispenser
US6577899B2 (en)*2000-01-212003-06-10Medtronic Minimed, Inc.Microprocessor controlled ambulatory medical apparatus with hand held communication device
CN1251421C (en)2000-01-252006-04-12麦德托尼克公司Program variable broadcast hearing communications capable of planting in medical equipment
US6497656B1 (en)2000-02-082002-12-24General Electric CompanyIntegrated wireless broadband communications network
US20030060765A1 (en)*2000-02-162003-03-27Arthur CampbellInfusion device menu structure and method of using the same
US6542902B2 (en)*2000-03-242003-04-01Bridge Medical, Inc.Method and apparatus for displaying medication information
US7066910B2 (en)2000-04-272006-06-27Medtronic, Inc.Patient directed therapy management
US9135393B1 (en)*2000-08-022015-09-15Smiths Medical Asd, Inc.Processing program data for medical pumps
US6547748B1 (en)*2000-08-172003-04-15Ge Medical Systems Information Technologies, Inc.Physiological event detector and method of operating the same
CA2421133C (en)2000-09-082012-06-26Insulet CorporationDevices, systems and methods for patient infusion
US6808508B1 (en)*2000-09-132004-10-26Cardiacassist, Inc.Method and system for closed chest blood flow support
US6416495B1 (en)2000-10-102002-07-09Science IncorporatedImplantable fluid delivery device for basal and bolus delivery of medicinal fluids
US6520910B1 (en)*2000-10-132003-02-18Ge Medical Systems Information Technologies, Inc.Method and system of encoding physiological data
US6475148B1 (en)2000-10-252002-11-05Acuson CorporationMedical diagnostic ultrasound-aided drug delivery system and method
CA2325205A1 (en)2000-11-022002-05-02The Sullivan GroupComputerized risk management module for medical diagnosis
US6450956B1 (en)2000-11-062002-09-17Siemens Corporate Research, Inc.System and method for treatment and outcome measurement analysis
ES2281457T3 (en)2000-11-092007-10-01Insulet Corporation TRANSCUTANEOUS SUPPLY MEDIA.
US20020151875A1 (en)2000-12-042002-10-17Markus HallerPatient activated administration of drug bolus from implantable drug delivery system
US6506155B2 (en)*2000-12-152003-01-14Atl Ultrasound, Inc.Data entry and setup system and method for ultrasound imaging
US6551243B2 (en)*2001-01-242003-04-22Siemens Medical Solutions Health Services CorporationSystem and user interface for use in providing medical information and health care delivery support
US6747566B2 (en)2001-03-122004-06-08Shaw-Yuan HouVoice-activated remote control unit for multiple electrical apparatuses
US7083593B2 (en)2001-04-182006-08-01Advanced Bionics CorporationProgrammable implantable pump with accessory reservoirs and multiple independent lumen catheter
WO2002098493A1 (en)*2001-06-012002-12-12I-Flow CorporationLarge volume bolus device and method
JP2003025176A (en)2001-07-112003-01-29Incs IncTool management system
US6691043B2 (en)*2001-08-282004-02-10Maxi-Med, LlcBolus calculator
JP4754738B2 (en)2001-08-302011-08-24オリンパス株式会社 Medical holding device and medical device
US6740072B2 (en)*2001-09-072004-05-25Medtronic Minimed, Inc.System and method for providing closed loop infusion formulation delivery
US6827702B2 (en)*2001-09-072004-12-07Medtronic Minimed, Inc.Safety limits for closed-loop infusion pump control
US6690280B2 (en)2001-09-072004-02-10Richard A. CitrenbaumApparatus and process for infusion monitoring
US6537214B1 (en)*2001-09-132003-03-25Ge Medical Systems Information Technologies, Inc.Patient monitor with configurable voice alarm
US6475146B1 (en)2001-09-242002-11-05Siemens Medical Solutions Usa, Inc.Method and system for using personal digital assistants with diagnostic medical ultrasound systems
WO2003038566A2 (en)2001-11-012003-05-08Scott Laboratories, Inc.User interface for sedation and analgesia delivery systems and methods
US7407490B2 (en)*2001-11-292008-08-05Novo Nordisk A/SDelivery device and cartridge therefore
US7204823B2 (en)2001-12-192007-04-17Medtronic Minimed, Inc.Medication delivery system and monitor
US20050027182A1 (en)2001-12-272005-02-03Uzair SiddiquiSystem for monitoring physiological characteristics
US7022072B2 (en)2001-12-272006-04-04Medtronic Minimed, Inc.System for monitoring physiological characteristics
US20030128126A1 (en)2002-01-042003-07-10Burbank Jeffrey H.Method and apparatus for error warning with multiple alarm levels and types
US20030130625A1 (en)2002-01-072003-07-10Jacobson James D.Infusion system
US8775196B2 (en)*2002-01-292014-07-08Baxter International Inc.System and method for notification and escalation of medical data
US6852104B2 (en)2002-02-282005-02-08Smiths Medical Md, Inc.Programmable insulin pump
US8250483B2 (en)2002-02-282012-08-21Smiths Medical Asd, Inc.Programmable medical infusion pump displaying a banner
US8504179B2 (en)2002-02-282013-08-06Smiths Medical Asd, Inc.Programmable medical infusion pump
US6830558B2 (en)2002-03-012004-12-14Insulet CorporationFlow condition sensor assembly for patient infusion device
US20040078231A1 (en)2002-05-312004-04-22Wilkes Gordon J.System and method for facilitating and administering treatment to a patient, including clinical decision making, order workflow and integration of clinical documentation
US8961461B2 (en)*2004-05-272015-02-24Baxter International Inc.Multi-state alarm system for a medical pump

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US8961461B2 (en)2015-02-24
ES2367758T3 (en)2011-11-08
US11583628B2 (en)2023-02-21
ATE511871T1 (en)2011-06-15
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PL2060285T3 (en)2011-11-30
US20150141921A1 (en)2015-05-21
CN1950118A (en)2007-04-18
PL1765435T3 (en)2009-08-31
US10518030B2 (en)2019-12-31
US20050267402A1 (en)2005-12-01
ATE425780T1 (en)2009-04-15
US20180207359A1 (en)2018-07-26
US9925334B2 (en)2018-03-27
US20200129693A1 (en)2020-04-30
IL177779A0 (en)2006-12-31
ES2324048T3 (en)2009-07-29
MXPA06011834A (en)2007-01-16
CA2567480C (en)2013-08-20
EP2060285A3 (en)2009-06-03
AU2005249902B2 (en)2010-05-27
DE602005013380D1 (en)2009-04-30
EP2060285B1 (en)2011-06-08
WO2005118028A1 (en)2005-12-15
AU2005249902A1 (en)2005-12-15
EP2060285A2 (en)2009-05-20
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EP1765435A1 (en)2007-03-28
EP1765435B1 (en)2009-03-18

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